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Experimetal Study and Numerical Modelling of the Effect of Foaming AgentProperties on Foam Flooding in Porous Media in Absence of Oleic Phase

机译:在没有油晶体缺失的多孔介质中发泡剂性能对发泡剂性质对多孔介质泡沫洪水影响的实验研究与数值模拟

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This paper presents an investigation on the effect of foaming agents perpropeties in tetms of surfactantconcentration,interfacial tension(IFT)and foam strength during foam flooding in porous media in theabsence of oleic phase.The experiments consisted of the co-injection of gas and various surfactant solutionswith three different formulation properties in terms of IFT reduction and foaming strength capability intoBentheimer sandstone samples initially saturated with the surfactant solution.Experiments were performedusing Bentheimer sandstone cores during,where X-ray CT images were taken during foam generation tofind out the stability of advancing front of foam propagation and to map the gas saturation for both thetransient and steady-state flow regimes.Then,a series of numerical simulation was conducted to investigate the effect of surfactant concentrationon pressure drop across the core for the foam flooding in the absence of oil.The foam model implementedis based on a local equilibrium and describes dependency of foam mobility reduction factor using severalindependent functions,such as liquid saturation,foam velocity,oil saturation and capillary number.Tothis end,the dry-out and gas velocity functions in the foam model were determined from the experimentaldata obtained at low and high-quality regimes of foam flow at a constant injection velocity.Next,pressuredrop profiles of foam flooding at two different surfactant concentrations were modelled to determinethe parameters of the surfactant-dependent function in the foam model.The simulation results fit theexperimental data of pressure drops very well.
机译:本文提出了对油型介质泡沫泛胀,泡沫涌出的泡沫涌出的泡沫粥样菌浓度,界面张力(IFT)和泡沫强度施用的研究。实验包括共注入气体和各种表面活性剂关于IFT的IFT溶解和发泡强度能力的三种不同配方性能最初用表面活性剂溶液饱和的IFT砂岩样品。在泡沫生成期间拍摄X射线CT图像的实施过程中进行了膨胀剂砂岩核。泡沫繁殖并映射缩放和稳态流动率的气体饱和度。然后,进行一系列数值模拟,以研究在没有油的情况下对泡沫泛滥的表面活性剂浓度压降的作用。泡沫模型实现基于局部平衡um并描述使用几个依赖性功能的泡沫迁移率降低因子的依赖性,例如液态饱和度,泡沫速度,油饱和度和毛细血管编号。泡沫模型中的干出和气体速度函数从低于低获得的实验数据确定在恒定注射速度下泡沫流动的高质量制度。用两种不同的表面活性剂浓度的泡沫泛洪水的压力型曲线被建模以确定泡沫模型中表面活性剂依赖功能的参数。模拟结果适合压力的实验数据掉落得很好。

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